Image/s credit: Agile Robots.

Agile Robots Agile ONE Humanoid Robot

company logo for Agile Robots Agile Robots

Country: Germany

Year: 2025

Summary

Agile ONE is a full-size industrial humanoid that combines bipedal mobility, sensor-rich dexterous hands and Physical AI to autonomously perform manufacturing and logistics tasks.

Status: In development, Commercially available

Operation: Autonomous, Collaborative

Robot Type / Domain: Multi/General-Purpose, Industrial

Tasks: Material transport, pick and place, tool use, assembly

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Agile ONE Humanoid at the Hannover Messe 2026
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Learn More About Agile ONE and its Features
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Learn About AgileCore Software Platform

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Built for Industrial Work

Agile ONE is intended for industrial jobs where mobility, two-handed manipulation and the ability to use human-oriented equipment are valuable. Agile Robots lists material gathering and transport, pick-and-place, machine tending, tool use and fine manipulation among its main target tasks. The humanoid can move autonomously between workstations instead of remaining fixed in one location, giving it the potential to support several stages of a production or logistics workflow.

At Hannover Messe 2026, Agile ONE demonstrated an assembly task by producing a personalised miniature robotic arm for visitors. This gives a practical example of the type of component handling and assembly work Agile Robots is targeting. 

Dexterity, Perception and Physical AI

One of Agile ONE’s most distinctive features is its manipulation system. Its five-finger hands each provide 21 degrees of freedom and include tactile fingertips and force-torque sensing. This allows the robot to adjust its grip based on physical contact rather than relying only on vision. Agile Robots says the hands are intended for both delicate manipulation and stronger material-handling tasks.

The robot combines touch with cameras, LiDAR, proximity sensing, speech recognition and motion-and-sound tracking. Its AI architecture separates different levels of control, including longer-term task planning, rapid reactions and fine motor movements. The underlying Robot Foundation Models are trained using real production data, simulated environments, teleoperation and human-collected examples. The goal is to help Agile ONE adapt to variations in components, layouts and tasks instead of depending entirely on rigidly programmed motions.

Human Interaction, Integration and Current Maturity

Agile ONE is designed to make its actions understandable to people working nearby. Its eyes, coloured signals, voice responses and chest display communicate information about its state and intended actions, while proximity sensing supports awareness of nearby workers and obstacles. This does not replace a proper industrial safety assessment, but it gives the robot a more readable and approachable interface than a conventional industrial machine.

Agile Robots also presents Agile ONE as part of a connected production ecosystem. Through AgileCore, it can operate alongside the company’s robotic arms, autonomous mobile robots and other automation equipment. Production began in 2026, and the company says it is working with selected partners and early customers. Based on the currently available evidence, the most accurate description is an early commercial industrial humanoid that remains under active development, rather than a widely deployed or fully mature general-purpose robot.

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Brief History

Agile Robots was founded in 2018 as a spin-off from the German Aerospace Center, or DLR, and is headquartered in Munich. The company develops AI-powered robotic systems, including collaborative arms, mobile robots, dexterous hands and industrial automation solutions.

Agile Robots officially unveiled Agile ONE in November 2025 as its first full-size humanoid robot designed specifically for industrial work. The company announced that series production would begin in early 2026 at a new manufacturing facility in Bavaria, Germany. During 2026, Agile ONE appeared in several major demonstrations, including activating Deutsche Telekom’s Industrial AI Cloud and completing an assembly demonstration at Hannover Messe. These appearances marked its transition from a newly announced humanoid into an early commercial industrial platform.

Top 5+ Qualities (by addoobot)

What we find to be the top qualities of the Agile ONE humanoid robot:

  • Industrial-First Design: Developed specifically for manufacturing, logistics and other structured industrial environments rather than household or entertainment use.
  • Highly Dexterous Hands: Each hand has 21 degrees of freedom, modular fingers and tactile sensing for handling both small components and larger objects.
  • Strong Full-Body Capability: Combines a payload of up to 20 kg with bipedal mobility and a maximum walking speed of 2 m/s.
  • Advanced Environmental Perception: Cameras, LiDAR, proximity sensors and audio processing help the robot understand people, objects and obstacles around it.
  • Intuitive Human Interaction: Expressive eyes, voice responses, status lights and a chest display make the robot’s actions and operating state easier for nearby workers to understand.
  • Extended Battery Runtime: Offers up to eight hours of battery life, although actual runtime will depend on the task, movement and payload.
  • Factory-Trained Physical AI: Its foundation models use real industrial data alongside simulated, teleoperated and human-collected training data.
  • Connected Automation Ecosystem: Agile ONE is designed to work with Agile Robots’ arms, mobile robots and software rather than functioning only as an isolated humanoid.

Technical Specifications

• Payload: 20kg

• Hand: 5 Fingers with 21 joints

• Cameras, LiDAR sensors, proximity sensing

Max. Size:  1740H (mm)

Max. Size:  68.504H (in)

Weight: 69 kg

Weight: 152.119 lbs

Max. Locomotion Speed: 2 m/s

Max. Locomotion Speed: 6.562 ft/s

Battery Operated? Yes

Max. Runtime: 8 hr(s)

Locomotion Type: Legs/Walking

DOFs (total): 71

Human Interface: Expressive eyes, light signals, chest information display and voice responses

Sensors: Cameras, LiDAR sensors, proximity sensing, advanced speech recognition | Hand: Force and tactile sensing, including fingertip and joint force-torque sensors

Software: Designed for integration through AgileCore

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